lens_immiscible_ecfv_ad.hh
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29#ifndef EWOMS_LENS_IMMISCIBLE_ECFV_AD_HH
30#define EWOMS_LENS_IMMISCIBLE_ECFV_AD_HH
31
35
36namespace Opm::Properties {
37
38// Create new type tags
39namespace TTag {
40struct LensProblemEcfvAd { using InheritsFrom = std::tuple<LensBaseProblem, ImmiscibleTwoPhaseModel>; };
41} // end namespace TTag
42
43// use the element centered finite volume spatial discretization
44template<class TypeTag>
45struct SpatialDiscretizationSplice<TypeTag, TTag::LensProblemEcfvAd> { using type = TTag::EcfvDiscretization; };
46
47// use automatic differentiation for this simulator
48template<class TypeTag>
49struct LocalLinearizerSplice<TypeTag, TTag::LensProblemEcfvAd> { using type = TTag::AutoDiffLocalLinearizer; };
50
51// this problem works fine if the linear solver uses single precision scalars
52template<class TypeTag>
53struct LinearSolverScalar<TypeTag, TTag::LensProblemEcfvAd> { using type = float; };
54
55} // namespace Opm::Properties
56
57#endif // EWOMS_LENS_IMMISCIBLE_ECFV_AD_HH
Definition: blackoilmodel.hh:72
The floating point type used internally by the linear solver.
Definition: linalgproperties.hh:46
Definition: fvbaseproperties.hh:55
The splice to be used for the spatial discretization.
Definition: multiphasebaseproperties.hh:39
Definition: fvbaseadlocallinearizer.hh:53
Definition: ecfvproperties.hh:41
Definition: lens_immiscible_ecfv_ad.hh:40
std::tuple< LensBaseProblem, ImmiscibleTwoPhaseModel > InheritsFrom
Definition: lens_immiscible_ecfv_ad.hh:40